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#include <tools modifiers="" modifiertest.h=""></tools>
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// std includes
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#include <cmath></cmath>
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//*****************************************************************************************
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//    TModifierTest::Modifier implementation
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//*****************************************************************************************
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TModifierTest::Modifier::Modifier(
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  TTrackHandler &handler,
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  double angle,
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  double radius,
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  double speed
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):
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  TTrackModifier(handler),
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  angle(angle),
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  radius(radius),
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  speed(speed)
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{ }
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TTrackPoint
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TModifierTest::Modifier::calcPoint(double originalIndex) {
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  TTrackPoint p = TTrackModifier::calcPoint(originalIndex);
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  if (p.length > TConsts::epsilon) {
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    double frac;
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    int i0 = original.floorIndex(originalIndex, &frac);
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    int i1 = original.ceilIndex(originalIndex);
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    if (i0 < 0) return p;
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    if (Handler *handler = dynamic_cast<handler*>(&this->handler)) {</handler*>
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      double angle = this->angle + speed*TTrack::interpolationLinear(
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        handler->angles[i0], handler->angles[i1], frac);
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      double radius = 2.0*this->radius*p.pressure;
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      double s = sin(angle);
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      double c = cos(angle);
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      TPointD tangent = original.calcTangent(originalIndex, fabs(2.0*this->radius/speed));
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      p.position.x -= tangent.y*s*radius;
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      p.position.y += tangent.x*s*radius;
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      p.pressure   *= 1.0 - 0.5*c;
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    }
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  } else {
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    p.pressure = 0.0;
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  }
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  return p;
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}
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//*****************************************************************************************
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//    TModifierTest implementation
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//*****************************************************************************************
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TModifierTest::TModifierTest(int count, double radius):
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  count(count),
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  radius(radius)
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{ }
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void
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TModifierTest::modifyTrack(
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  const TTrack &track,
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  const TInputSavePoint::Holder &savePoint,
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  TTrackList &outTracks )
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{
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  const double segmentSize = 2.0*M_PI/10.0;
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  if (!track.handler) {
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    if (track.getKeyState(track.front().time).isPressed(TKey(Qt::Key_Alt))) {
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      // TModifierTest::Handler for spiro
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      track.handler = new Handler(track);
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      for(int i = 0; i < count; ++i)
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        track.handler->tracks.push_back(
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          new TTrack(
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            new Modifier(
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              *track.handler,
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              i*2.0*M_PI/(double)count,
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              radius,
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              0.25 )));
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    }
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  }
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  Handler *handler = dynamic_cast<handler*>(track.handler.getPointer());</handler*>
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  if (!handler) {
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    TInputModifier::modifyTrack(track, savePoint, outTracks);
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    return;
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  }
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  outTracks.insert(
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    outTracks.end(),
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    track.handler->tracks.begin(),
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    track.handler->tracks.end() );
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  if (!track.changed())
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    return;
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  int start = track.size() - track.pointsAdded;
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  if (start < 0) start = 0;
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  // remove angles
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  double lastAngle = start < (int)handler->angles.size() ? handler->angles[start]
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                   : handler->angles.empty() ? 0.0
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                   : handler->angles.back();
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  handler->angles.resize(start, lastAngle);
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  // add angles
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  for(int i = start; i < track.size(); ++i) {
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    if (i > 0) {
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      double dl = track[i].length - track[i-1].length;
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      double da = track[i].pressure > TConsts::epsilon
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                ? dl/(radius*track[i].pressure) : 0.0;
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      handler->angles.push_back(handler->angles[i-1] + da);
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    } else {
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      handler->angles.push_back(0.0);
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    }
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  }
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  // process sub-tracks
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  for(TTrackList::const_iterator ti = handler->tracks.begin(); ti != handler->tracks.end(); ++ti) {
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    TTrack &subTrack = **ti;
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    double currentSegmentSize = segmentSize;
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    if (const Modifier *modifier = dynamic_cast<const modifier*="">(subTrack.modifier.getPointer()))</const>
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      if (fabs(modifier->speed) > TConsts::epsilon)
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        currentSegmentSize = segmentSize/fabs(modifier->speed);
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    // remove points
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    int subStart = subTrack.floorIndex(subTrack.indexByOriginalIndex(start-1)) + 1;
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    subTrack.truncate(subStart);
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    // add points
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    for(int i = start; i < track.size(); ++i) {
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      if (i > 0) {
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        double prevAngle = handler->angles[i-1];
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        double nextAngle = handler->angles[i];
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        if (fabs(nextAngle - prevAngle) > 1.5*currentSegmentSize) {
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          double step = currentSegmentSize/fabs(nextAngle - prevAngle);
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          double end = 1.0 - 0.5*step;
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          for(double frac = step; frac < end; frac += step)
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            subTrack.push_back( subTrack.modifier->calcPoint((double)i - 1.0 + frac) );
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        }
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      }
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      subTrack.push_back( subTrack.modifier->calcPoint(i) );
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    }
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  }
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  track.resetChanges();
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}
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